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Minimization of Operational and Seepage Losses in Agricultural Water Distribution Systems Using the Ant Colony Optimization

机译:利用蚁群优化最小化农业配水系统​​的运营和渗流损失

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摘要

The present study's main objective is to simultaneously minimize operational and seepage losses in agricultural water distribution systems, relying on the Ant Colony Optimization (ACO). For this purpose, the following arrangements were made: i) Hydraulic flow simulation of the distribution systems was conducted by developing an Integrator Delay (ID) model using MATLAB and appraisal performance of the water distribution system, ii) The seepage simulation alongside the system employing a calibrated and validated estimation equation, iii) developing the ACO model to minimize operational and seepage losses within the agricultural water distribution Systems. Two single-objective and one multi-objective functions were considered to minimize seepage loss, operational loss, and both loss components simultaneously. The Moghan irrigation water distribution system, Iran, was selected as the case study. Optimization results revealed that the first through third objective functions managed to reduce the total losses in the Moghan water distribution systems by, respectively, 0.39, 3.1, and 4% compared to the existing conditions. A comparison with the optimization results from LINGO, a nonlinear optimization model, was suggestive of the advantages of the ACO in terms of the optimal result and optimization time. The proposed method can be used as a practical measure to improve water productivity within the scale of agricultural water distribution systems by improving the manual operating system's performance in the status quo.
机译:本研究的主要目标是同时最大限度地减少农业水分配系统中的运营和渗流损失,依赖于蚁群优化(ACO)。为此,提出了以下布置:i)通过使用Matlab的积分器延迟(ID)模型进行分配系统的液压流模拟,并使用水分配系统的评估性能,ii)与系统采用的系统一起进行渗漏仿真校准和验证的估计方程,III)开发ACO模型,以最大限度地减少农用配水系统内的运营和渗流损失。考虑两个单目标和一个多目标功能,以尽量减少同时渗漏,操作损耗和两个损耗组件。选择伊朗Moghan灌溉用水分配系统作为案例研究。优化结果表明,与现有条件相比,第一至第三目标函数分别通过分别为0.39,3.1和4%降低Moghan水分配系统的总损失。与Lingo,非线性优化模型的优化结果的比较是在最佳结果和优化时间方面提示ACO的优点。所提出的方法可以用作通过提高现状中的手动操作系统的性能来提高农用配水系统规模内的水生产率的实用措施。

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